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Holocene El Ni?o–Southern Oscillation variability reflected in subtropical Australian precipitation

机译:全新世厄尔尼诺现象-南极涛动变化反映在亚热带澳大利亚降水中

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The La Ni?a and El Ni?o phases of the El Ni?o-Southern Oscillation (ENSO) have major impacts on regional rainfall patterns around the globe, with substantial environmental, societal and economic implications. Long-term perspectives on ENSO behaviour, under changing background conditions, are essential to anticipating how ENSO phases may respond under future climate scenarios. Here, we derive a 7700-year, quantitative precipitation record using carbon isotope ratios from a single species of leaf preserved in lake sediments from subtropical eastern Australia. We find a generally wet (more La Ni?a-like) mid-Holocene that shifted towards drier and more variable climates after 3200?cal. yr BP, primarily driven by increasing frequency and strength of the El Ni?o phase. Climate model simulations implicate a progressive orbitally-driven weakening of the Pacific Walker Circulation as contributing to this change. At centennial scales, high rainfall characterised the Little Ice Age (~1450–1850 CE) in subtropical eastern Australia, contrasting with oceanic proxies that suggest El Ni?o-like conditions prevail during this period. Our data provide a new western Pacific perspective on Holocene ENSO variability and highlight the need to address ENSO reconstruction with a geographically diverse network of sites to characterise how both ENSO, and its impacts, vary in a changing climate.
机译:厄尔尼诺-南方涛动(ENSO)的拉尼娜和厄尔尼诺时期对全球区域降雨格局产生重大影响,对环境,社会和经济产生重大影响。在不断变化的背景条件下,关于ENSO行为的长期观点对于预测ENSO阶段在未来气候情景下可能如何做出响应至关重要。在这里,我们使用碳同位素比从澳大利亚亚热带东部湖底沉积物中保存的单个叶片物种得出的7700年定量降水记录。我们发现,在3200摄氏度后,全新世中期普遍呈湿润(更像La Ni?a样),并趋向干燥和多变的气候。 yr BP,主要由El Ni?o相的频率和强度增加所驱动。气候模型模拟暗示了太平洋沃克环流在轨道驱动下的逐渐减弱,从而助长了这一变化。在百年尺度上,高降雨是澳大利亚亚热带东部小冰期(约1450–1850 CE)的特征,而海洋代理则表明在此期间盛行类似El Ni?o的状况。我们的数据提供了全新世西太平洋全新世ENSO变异性的观点,并强调了需要使用地理上不同的站点网络解决ENSO重建问题,以表征ENSO及其影响在变化的气候中如何变化。

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